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Product Overview |
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The MT9JSF25672AZ-1G6M1ZF Micron 2GB DDR3-1600 CL11 ECC UDIMM Memory module provides 2GB of DDR3 memory operating at 1600 MHz with CAS latency 11. Its ECC support enables error detection and correction, and it is an unbuffered DIMM suitable for compatible motherboards requiring ECC memory. |
General Information |
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| Brand | Micron |
Technical Information |
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| Memory Capacity | 2GB |
| Memory Technology | DDR3 |
| Module Type | UDIMM |
| RAM Standard | PC3-12800 |
| Pin Count | 240-Pin |
| Error Correction | ECC |
| Rank | 1Rx8 |
| Voltage | 1.5V |
Performance |
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| Bus Speed | 1600 MT/s |
| Bandwidth | 12800 MB/s |
| Native Speed | 1600 MHz |
| CAS | CL11 |
Physical Characteristics |
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| Package | FBGA |
| Weight | 3.00 |
| Condition | Refurbished |
Miscellaneous |
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| Eco Friendly | Yes |
| Compliance Standards | RoHS, CE |
| Assembly Required | No |
Product Description |
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The MT9JSF25672AZ-1G6M1ZF from Micron is a 2GB DDR3-1600 ECC UDIMM memory module designed to provide error-correcting capabilities for improved system data integrity. It operates at 1600 MHz with a CAS latency of 11, supporting environments that require dependable memory performance. This module is typically used in servers and workstations where ECC memory is necessary to detect and correct single-bit memory errors, reducing the risk of data corruption during operation. IT professionals and system administrators benefit from its inclusion in systems demanding reliable error detection. Key Features
This memory module serves a vital role in maintaining system stability by correcting errors that may occur during data storage and retrieval. It is suitable for use in systems where ECC support is required to enhance operational reliability without introducing buffering complexity. |
Use Cases |
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This Micron 2GB DDR3-1600 ECC UDIMM memory module is typically implemented in server or workstation systems that require error-correcting memory to maintain data integrity. It is suited for environments where stability and error correction during memory operations are critical. How It's Used:
By integrating this memory module, systems gain an additional layer of error correction during data processing. It plays an important role in minimizing the risk of data corruption and system crashes caused by memory faults, contributing to overall operational stability. |
FAQ's |
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